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Numerical simulation on the effect of operating conditions and syngas compositions for synthetic natural gas production via methanation reaction

机译:甲烷化反应生产合成天然气的操作条件和合成气组成影响的数值模拟

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The synthetic natural gas (SNG) production via methanation reaction was investigated in this study. A fixed-bed tubular reactor was used as the physical model and axisymmetric non-isothermal governing equations for the gas flow, energy transfer and species transport were solved numerically. The operating conditions (inlet pressure, inlet temperature, feed rate, and heat transfer) and the reactant gas composition effects on the reaction were studied. CO conversion, CH4 yield, H-2 efficiency and CO2 yield were used to characterize the reaction performance. It was found that CO methanation is sensitive to the reaction temperature. Based on the operating conditions used in this study, CO conversion from 0% at reactant inlet temperature (T-in) of 300 degrees C abruptly increases to 100% at T-in = 380 degrees C. As T-in is greater than 380 degrees C, a hot spot exists in the reactor, leading to decreases in CO conversion and CH4 yield. It was also found that under the same operating condition, 60% decrease in CO conversion could result from an adiabatic reactor compared with the isothermal reactor. CO conversion and CH4 yield can be enhanced by increasing the reaction pressure and H-2/CO ratio, and decreasing the space velocity. With the addition of product species (CH4, CO2, and H2O) as the reactants, a decrease in CO conversion was found except for the addition of H2O. It was found that the CH4 yield was decreased by product species addition.
机译:通过甲烷化反应生产合成天然气(SNG)进行了这项研究。以固定床管式反应器为物理模型,数值求解了气体流动,能量传递和物质输运的轴对称非等温控制方程。研究了操作条件(入口压力,入口温度,进料速率和传热)以及反应气体组成对反应的影响。用CO转化率,CH 4收率,H-2效率和CO 2收率表征反应性能。发现CO甲烷化对反应温度敏感。根据本研究中使用的操作条件,CO转化率从反应物入口温度(T-in)为300摄氏度时的0%突然增加到T-in = 380摄氏度时的100%。当T-in大于380时摄氏度时,反应器中存在热点,导致CO转化率和CH4产率降低。还发现在相同的操作条件下,与等温反应器相比,绝热反应器可导致CO转化率降低60%。通过增加反应压力和H-2 / CO比并降低空速可以提高CO的转化率和CH4的产率。通过添加产物种类(CH4,CO2和H2O)作为反应物,发现除了添加H2O外,CO转化率降低。发现通过添加产物种类降低了CH 4的产率。

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